[1] 李善颖, 石庆鑫. 大规模风电场并网运行无功补偿研究[J]. 中国电力,2010,43(9):71-74. LI Shan-ying,SHI Qing-xin. Study on reactive power compensation for the integration and operation of large-scale wind farms[J]. Electric Power, 2010, 43(9):71-74. [2] 牛远方.电网故障时风电场基于STATCOM的无功协调控制策略[J] . 中国电力,2011,44(3):11-15. NIU Yuan-fang. Coordinated reactive power control strategy for wind farms with STATCOM under grid faults[J]. Electric Power, 2011, 44(3):11-15. [3] 范瑞祥, 肖红霞, 孙 , 等. 输电网SVC的系统设计及其应用[J]. 电气传动,2009,39(7):72-75. FAN Rui-xiang,XIAO Hong-xia,SUN Min, et al . System design of static var compensator and its application in transmission network[J]. Electric Drive, 2009,39(7):72-75. [4] 余梦泽,陈柏超,田翠华,等. 采用磁控电抗器的静止型高压动态无功补偿装置[J] . 高电压技术,2009,35(7):1770-1773. YU Meng-ze,CHEN Bai-chao,TIAN Cui-hua, et al . High voltage static var reactive power compensator using shunt magnetically controllable reactor [J]. High Voltage Engineering, 2009,35(7):1770-1773. [5] 史欢,黄晓胜,曾文君,等. 磁控电抗器的动态无功补偿装置[J] .中国电力,2011,44(1):32-36. SHI Huan,HUANG Xiao-sheng,ZENG Wen-jun, et al . Dynamic reactive power compensation device based on magnetically controlled reactor[J]. Electric Power, 2011, 44(1):32-36. [6] GB/T 20297—2006 静止无功补偿装置(SVC)现场试验[S] . [7] GB/T 20298—2006 静止无功补偿装置(SVC)功能特性[S] . [8] 靳静, 艾芊, 赵岩. FACTS装置在风电场中的无功补偿原理与仿真[J] . 电力自动化设备,2007,27(8):58-60. JIN Jing,AI Qian,ZHAO Yan. Reactive compensation principle and simulation of FACTS device in wind farm[J] . Electric Power Automation Equipment, 2007,27(8):58-60. [9] 周建丰, 顾亚琴,韦寿祺,等. SVC与STATCOM的综合比较分析[J] . 电力自动化设备, 2007, 27(12):57-61. ZHOU Jian-feng,GU Ya-qin,WEI Shou-qi, et al . Comprehensive comparative analysis of SVC and STATCOM[J]. Electric Power Automation Equipment, 2007,27(12):57-61. [10] VARMA R K,AUDDY S,SEMSEDINI Y. Mitigation of sub-synchronous resonance in a series-compensated wind farm using FACTS controllers[J] . IEEE Transactions on Power Delivery,2008,23(3):1645-1655. [11] 许晓艳, 石文辉, 李岩春, 等. 风电场集中接入对区域电网的影响分析[J]. 中国电力,2009,42(1):93-97. XU Xiao-yan,SHI Wen-hui,LI Yan-chun, et al . Impacts of wind farm central integration on local power grids[J]. Electric Power,2009, 42(1):93-97. |